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C10-13 Isoalkanes are highly refined isoparaffinic hydrocarbon solvents typically associated with CAS No. 68551-17-7. They are widely used in electronics cleaning, metal degreasing, precision component cleaning, and industrial maintenance because of their low aromatic content, low residue characteristics, and good material compatibility.
C10-13 Isoalkanes are a group of branched-chain hydrocarbon solvents consisting primarily of carbon chains ranging from C10 to C13.
Unlike conventional mineral spirits that may contain higher aromatic content, C10-13 Isoalkanes are produced through advanced refining and hydrogenation processes that reduce impurities and improve solvent performance.
Typical characteristics include:
Low aromatic content
Low sulfur content
Low odor
High purity
Low residue after evaporation
Good compatibility with many industrial materials
These properties make them suitable for cleaning and degreasing applications where cleanliness and consistency are important.
CAS No. 68551-17-7 is a chemical identification number commonly associated with C10-C13 isoalkane materials.
A CAS number serves as a unique identifier for chemical substances but does not describe:
Cleaning performance
Evaporation characteristics
Material compatibility
Application suitability
For industrial users, technical properties are generally more important than the CAS number itself when selecting a cleaning solvent.
The exact values vary by manufacturer and grade, but typical properties include:
Property | Typical Value |
|---|---|
Carbon Range | C10-C13 |
Appearance | Clear Liquid |
Density @20°C | 0.75–0.78 g/cm³ |
Flash Point | 62–80°C |
Aromatic Content | <0.01% |
Sulfur Content | Very Low |
Water Content | Very Low |
Odor | Low |
Residue After Evaporation | Low |
These properties contribute to their widespread use in industrial cleaning processes.
Cleaning solvents must dissolve contaminants while minimizing residue and material damage.
C10-13 Isoalkanes are commonly selected because they provide:
Effective oil and grease removal
Low residue after drying
Low aromatic content
Good compatibility with many metals and plastics
Stable cleaning performance
These characteristics are useful in applications where surface cleanliness affects product quality.
C10-13 Isoalkanes are used for:
PCB cleaning
SMT assembly cleaning
Connector cleaning
Precision electronic component cleaning
The low residue characteristics help reduce contamination on sensitive electronic assemblies.
Common applications include:
Metal degreasing
Machining oil removal
Surface preparation before coating
Maintenance cleaning
Removing oils and processing residues helps improve downstream manufacturing operations.
Typical uses include:
Component cleaning
Precision parts degreasing
Maintenance cleaning
Surface preparation
Many automotive manufacturing processes require solvents capable of removing grease and oil without leaving significant residue.
Precision cleaning applications may include:
Mechanical components
Precision assemblies
Instrument parts
Manufacturing equipment
Low residue performance is often important in these industries.
Yes.
Many electronics cleaning processes require solvents with:
Low residue
Low conductivity
Material compatibility
Controlled evaporation characteristics
C10-13 Isoalkanes are frequently used in cleaning applications involving:
Printed circuit boards (PCBs)
Electronic connectors
Sensors
SMT assemblies
Material compatibility testing should always be performed before production use.
Yes.
Metal surfaces are often contaminated with:
Cutting oils
Lubricants
Grease
Manufacturing residues
C10-13 Isoalkanes can help remove these contaminants before:
Assembly
Coating
Painting
Inspection
The effectiveness depends on the type and amount of contamination present.
How Do C10-13 Isoalkanes Compare with Conventional Hydrocarbon Solvents?
Property | C10-13 Isoalkanes | Conventional Hydrocarbon Solvents |
|---|---|---|
Aromatic Content | Very Low | Higher |
Odor | Low | Moderate |
Residue | Low | Moderate |
Stability | High | Moderate |
Precision Cleaning Suitability | High | Moderate |
Material Compatibility | Good | Variable |
Actual performance depends on formulation and operating conditions.
Several factors influence cleaning performance:
Higher flash points may improve handling safety in some industrial environments.
Evaporation affects drying time and cleaning efficiency.
Low residue is often preferred for electronics and precision cleaning.
The solvent should be compatible with:
Metals
Plastics
Elastomers
Coatings
Many industries require compliance with regulations such as:
REACH
RoHS
SVHC requirements
Documentation should be reviewed before procurement.
After soldering operations, flux residues may remain on PCB surfaces.
C10-13 Isoalkanes can be used to remove contaminants before inspection or coating processes.
Common objectives include:
Improved cleanliness
Reduced contamination
Better coating preparation
Manufactured metal components often carry machining oils and lubricants.
Cleaning before assembly or coating helps reduce contamination-related defects.
Precision assemblies frequently require cleaning before final packaging.
Low residue cleaning helps maintain product cleanliness and consistency.
C10-13 Isoalkanes are highly refined isoparaffinic hydrocarbon solvents used in cleaning, degreasing, and precision industrial applications.
It is a chemical identification number commonly associated with C10-C13 isoalkane materials.
Yes. They belong to the isoparaffinic hydrocarbon solvent family.
They are widely used in electronics cleaning applications where low residue characteristics are required.
Yes. They are commonly used to remove oils, grease, and manufacturing residues from metal surfaces.
Key considerations include flash point, evaporation rate, residue level, material compatibility, and regulatory compliance.
C10-13 Isoalkanes are highly refined isoparaffinic hydrocarbon solvents used across electronics manufacturing, metalworking, automotive production, and precision engineering. Their combination of low aromatic content, low residue characteristics, and broad cleaning capability makes them suitable for applications requiring effective cleaning and consistent surface preparation.
